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Rotation-independent polarization parameters for distinguishing different anisotropic microstructures

机译:与旋转无关的极化参数,用于区分不同的各向异性微观结构

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Polarization imaging and Mueller polarimetry have shown great potentials as powerful tools for material science and biomedical studies. However, many polarization parameters are influenced by the spatial orientation of the sample and experimental configurations. In this report, we introduce the rotation and mirror transformation theory of Mueller matrix, and propose a set of rotation invariant parameters and corresponding orientation predicting parameters. We analyze their physical meaning by studying the Mueller matrix of linear diattenuator, retarder and their combinations, conclude that the non-zero of some parameters can indicate the coexistence of difference anisotropy effects. Theories are verified with the Monte Carlo simulation of mixing aligned cylinder scatterers. It is shown that parameters from the Mueller matrix transformation theory are closely related to the symmetry properties of the sample, and have potential applications for fast analyzing different anisotropy contributions in the media.
机译:极化成像和Mueller极化测定法显示出巨大的潜力,可作为材料科学和生物医学研究的强大工具。但是,许多偏振参数受样品的空间方向和实验配置的影响。在本报告中,我们介绍了Mueller矩阵的旋转和镜像变换理论,并提出了一组旋转不变参数和相应的方向预测参数。我们通过研究线性衰减器,延迟器及其组合的Mueller矩阵来分析它们的物理意义,得出的结论是某些参数的非零值可以表示差异各向异性效应的共存。理论已通过混合对准圆柱体散射体的蒙特卡洛模拟进行了验证。结果表明,穆勒矩阵变换理论中的参数与样品的对称性密切相关,并且在快速分析介质中不同的各向异性贡献方面具有潜在的应用价值。

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